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Physical Review Letters|October 30, 2012
Validation of a turbulent Kelvin-Helmholtz shear layer model using a high-energy-density OMEGA laser experimentO A Hurricane, V A Smalyuk, K Raman, et al.Physical Review. E|April 19, 2017
X-ray shadow imprint of hydrodynamic instabilities on the surface of inertial confinement fusion capsules by the fuel fill tubeA G MacPhee, D T Casey, D S Clark, et al.Physical Review. E|July 16, 2017
Publisher's Note: X-ray shadow imprint of hydrodynamic instabilities on the surface of inertial confinement fusion capsules by the fuel fill tube [Phys. Rev. E 95, 031204(R) (2017)]A G MacPhee, D T Casey, D S Clark, et al.Physical Review Letters|July 23, 2008
Monoenergetic-proton-radiography measurements of implosion dynamics in direct-drive inertial-confinement fusionC K Li, F H Séguin, J R Rygg, et al.Physical Review Letters|May 27, 2014
First measurements of hydrodynamic instability growth in indirectly driven implosions at ignition-relevant conditions on the National Ignition FacilityV A Smalyuk, D T Casey, D S Clark, et al.Physical Review Letters|June 4, 2008
Role of hot-electron preheating in the compression of direct-drive imploding targets with cryogenic D2 ablatorsV A Smalyuk, D Shvarts, R Betti, et al.Physical Review Letters|April 22, 2014
First observations of nonhydrodynamic mix at the fuel-shell interface in shock-driven inertial confinement implosionsH G Rinderknecht, H Sio, C K Li, et al.Physical Review Letters|June 1, 2004
Dependence of shell mix on feedthrough in direct drive inertial confinement fusionS P Regan, J A Delettrez, V N Goncharov, et al.The Review of Scientific Instruments|November 7, 2012
Imaging of high-energy x-ray emission from cryogenic thermonuclear fuel implosions on the NIFT Ma, N Izumi, R Tommasini, et al.Physical Review Letters|August 23, 2002
Shell mix in the compressed core of spherical implosionsS P Regan, J A Delettrez, F J Marshall, et al.Pageof 6